Prieto I, Serrano M, Lázaro J M, Salas M, Hermoso J M
Centro de Biología Molecular, Universidad Autónoma de Madrid, Canto Blanco, Spain.
Proc Natl Acad Sci U S A. 1988 Jan;85(2):314-8. doi: 10.1073/pnas.85.2.314.
The Bacillus subtilis bacteriophage phi 29 protein p6 binds to double-stranded DNA, but not to single-stranded DNA, as determined by a gel retardation assay. The nature of the interaction was further studied by DNase I "footprinting" experiments. Protein p6 binds to fragments containing the right or left terminal sequences of phi 29 DNA, producing a characteristic pattern of hypersensitive bands spaced about 24 nucleotides apart along most of the fragment, flanking protected regions. Binding of protein p6 to an internal phi 29 DNA fragment was also observed, but the footprint pattern was more salt sensitive than that obtained with the terminal phi 29 DNA fragments. By electron microscopy, protein p6 was shown to cover the DNA, totally or partially, from one end. In addition, binding of protein p6 to relaxed circular DNA induced positive supercoiling, indicating that a topological change in the DNA occurred.
通过凝胶阻滞试验确定,枯草芽孢杆菌噬菌体φ29的蛋白质p6能与双链DNA结合,但不能与单链DNA结合。通过DNase I“足迹”实验进一步研究了这种相互作用的性质。蛋白质p6与含有φ29 DNA右末端或左末端序列的片段结合,产生一种特征性的超敏带模式,这些超敏带沿片段的大部分区域以约24个核苷酸的间隔排列,位于受保护区域的两侧。也观察到蛋白质p6与φ29内部DNA片段的结合,但足迹模式比用φ29末端DNA片段获得的模式对盐更敏感。通过电子显微镜观察,发现蛋白质p6从一端完全或部分覆盖DNA。此外,蛋白质p6与松弛环状DNA的结合诱导了正超螺旋,表明DNA发生了拓扑变化。